Warming device constructions with a poncho-type patient gown
A warming device includes a poncho-type patient gown having a major body portion with inside and outside surfaces, a central panel in the major body portion, opposing sleeve portions in the central panel, and a head opening in the central panel, between the sleeve portions. An inflatable convective warming apparatus is supported on a surface of the patient gown, extending from a lower edge of the patient gown at least to the head opening.
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This Application claims priority as a continuation-in-part of U.S. Ser. No. 10/508,319, filed Mar. 3, 2005, now U.S. Pat. No. 7,837,721, which is a 371 of PCT/US03/11128, filed Apr. 10, 2003, which claims the benefit of 60/371,314, filed Apr. 10, 2002.
This application contains subject matter related to the subject matter of the following patent applications, all commonly owned herewith:
Patent Cooperation Treaty (PCT) Application No. PCT/US03/11128, filed Apr. 10, 2003, entitled “Patient Comfort Apparatus and System”, and published on Oct. 23, 2003 under Publication No. WO 2003/086500;
Patent Cooperation Treaty (PCT) Application No. PCT/US05/025355, filed Jul. 18, 2005, entitled “Perioperative Warming Device”, and published on Feb. 23, 2006 under Publication No. WO 2006/020170;
Patent Cooperation Treaty (PCT) Application No. PCT/US05/043968, filed Dec. 6, 2005, entitled “Warming Device with Varied Permeability”, and published on Jun. 15, 2006 under Publication No. WO 2006/062910;
Patent Cooperation Treaty (PCT) Application No. PCT/US05/044214, filed Dec. 6, 2005, entitled “Warming Device”, and published on Jun. 15, 2006 under Publication No. WO 2006/063027;
Patent Cooperation Treaty (PCT) Application No. PCT/US06/004644, filed Feb. 9, 2006, entitled “Warming Device for Perioperative Use”, and published on Aug. 17, 2006 under Publication No. WO 2006/086587;
U.S. patent application Ser. No. 10/411,865, filed Apr. 10, 2003, entitled “Patient Comfort Apparatus and System” and published on Oct. 16, 2003 under Publication No. US 2003/0195596 and issued on Feb. 21, 2006 under U.S. Pat. No. 7,001,416;
U.S. patent application Ser. No. 10/508,319, filed Sep. 20, 2004, entitled “Patient Comfort Apparatus and System” and published on Jun. 30, 2005 under Publication No. US 2005/0143796;
U.S. patent application Ser. No. 11/005,883, filed Dec. 7, 2004, entitled “Warming Device with Varied Permeability” and published on Jun. 8, 2006 under Publication No US 2006/0122671;
U.S. patent application Ser. No. 11/006,491, filed Dec. 7, 2004, entitled “Warming Device” and published on Jun. 8, 2006 under Publication No. US 2006/0122672;
U.S. patent application Ser. No. 11/057,396, filed Feb. 11, 2005, entitled “Perioperative Warming Device”, and published on Aug. 17, 2006 under Publication No. US 2006/0184215;
U.S. patent application Ser. No. 11/057,403, filed Feb. 11, 2005, entitled “Warming Device for Perioperative Use”, and published on Aug. 17, 2006 under Publication No. US 2006/0184217;
U.S. patent application Ser. No. 11/057,404, filed Feb. 11, 2005, entitled “Clinical Garment for Comfort Warming and Prewarming”, and published on Aug. 17, 2006 under Publication No. US 2006/0184218; and,
U.S. patent application Ser. No. 11/363,136, filed Feb. 27, 2006, entitled “Forced Air Warming Unit” and published on Jul. 6, 2006 under Publication No. US2006/0147320.
BACKGROUNDA device for warming a patient in a clinical environment includes a poncho-type patient gown with an inflatable convective warming apparatus supported on the patient gown.
Inflatable thermal blankets that transfer heat to a human body by convection are known. In this regard, an inflatable thermal blanket receives a stream of pressurized, warmed air, inflates in response to the pressurized air, distributes the warmed air within a pneumatic structure, and emits the warmed air onto a body to accomplish such objectives as increasing comfort, reducing shivering, and treating or preventing hypothermia. Arizant Healthcare Inc., the assignee of this application, sells such inflatable thermal blankets under the BAIR HUGGER® brand.
Inflatable thermal blankets have been specifically designed for particular deployments where therapeutic warming is indicated. Three representative inflatable thermal blankets known in the prior art are shown in
The construction of these prior art inflatable thermal blankets is well understood. Examples of specific constructions are given in U.S. Pat. Nos. 5,620,482, 5,443,488, 5,360,439, and 5,304,213. See also U.S. Pat. No. 5,974,605.
The inflatable thermal blankets of
A novel device which solves the problem of warming patients that may be standing, sitting, or prone is disclosed in the referenced Patent Application Publication No. US 2005/0143796, which is incorporated herein by reference. This warming device includes a clinical garment which is adapted to support an inflatable convective warming apparatus in order to warm a person wearing the clinical garment, thereby providing for the person's comfort without limiting the person's mobility. A novel multifunction warming device for perioperative use described in the referenced Patent Application Publication No. US 2006/0122671, which is incorporated herein by reference. This multifunction warming device is constituted of a clinical garment and an inflatable convective warming apparatus constructed for comfort warming and/or therapeutic warming that is supported on a surface of the clinical garment.
Patient warming devices manufactured and sold by Arizant Healthcare Inc. under the BAIR PAWS® brand include a clinical garment and one or more inflatable convective warming apparatuses supported on one or more surfaces of the garment. Constructions of these patient warming devices are disclosed in detail in the published patent applications and issued patents referenced in paragraph [0002]. While a patient wears the clinical garment, a convective warming apparatus supported on an inside surface of the garment is inflated with a stream of warmed, pressurized air and emits the warmed air within the garment to provide comfort warming during the preoperative phase. The patient warming device is deployed on the patient and operated to provide therapeutic warming during and after surgery. The clinical garment is a sleeved, robe-like garment, made of a soft, nonwoven material. It has a back or side opening that is closed by ties. The sleeves, which are sewn on to the clinical garment after a body of the garment is formed, can be opened and closed again along their upper seams to provide access to the upper arms and chest of the patient wearing the garment. The garment can be opened, removed from, and repositioned on the patient during and after surgery to provide upper, full, or lower body therapeutic warming. This construction provides clinically effective warming solutions for all periods of the perioperative cycle.
The efficacy of warming a patient for comfort preoperatively and then warming a patient for therapy during, and after surgery has been well documented. (Yilmaz M, et al. Impact of perioperative warming on maintenance of normothermia and outcome after colorectal surgery. Anestheseology 2008; 109: A880-A881). The assignee's BAIR PAWS products effectively provide both comfort and therapeutic warming throughout the perioperative cycle. (Wagner D, et al. Effects of comfort warming on preoperative patients. AORN 2006; 84: 427-448. Andrzejowski J, et al. Effect of prewarming on post-induction core temperature and the incidence of inadvertent perioperative hypothermia in patients undergoing general anaesthesia. BJA 2008; 101, 5: 627-631).
Nevertheless, there are needs for alternate patient warming device constructions that provide new garment configurations with additional modes of patient access, simplified manufacturing, and alternate means of deployment during intra-operative use.
These needs are met with a patient warming device that includes a patient gown with a poncho-type construction and at least one inflatable convective warming device supported on a surface of the patient gown. The poncho-type construction provides access to both sides of a patient through opposing side openings that can be opened and closed. Additionally, a poncho-type construction with sleeves provides access to the upper chest and arms of the patient through both upper and lower portions of the sleeves. The poncho-type construction is particularly suited to simple, inexpensive modes of manufacture in which sleeves are provided by cutting a web of patient gown material instead of by attachment of sleeve portions during or after web processing. Furthermore, the poncho-type construction provides a multi-mode patient warming device with an easily-manipulated patient gown that does not need to be removed or detached from the patient to provide a particular mode of therapeutic warming.
SUMMARYA warming device includes a patient gown having a suitable opening, such as a head opening in a poncho-type gown. Preferably, the patient gown is a poncho-type gown having front and rear panels, and a central panel between the front and rear panels, in which a head opening is provided in the central panel to admit the head. An inflatable convective warming apparatus is supported on a surface of the patient gown.
Preferably, the inflatable convective warming apparatus is supported on an inside surface of the patient gown, substantially in the front section, extending from the head opening toward a lower edge of the front section.
In some embodiments, the inflatable convective warming apparatus extends on the inside surface, along the front and rear panels, and includes a head opening aligned with the patient gown head opening.
In some embodiments, the inflatable convective warming apparatus includes separately inflatable sections designed to provide different modes of patient warming. Each section is capable of being inflated by a distinct heater/blower apparatus designed to provide an air stream conditioned for a particular mode of patient warming. Alternately, each section is capable of being inflated by a heater/blower unit designed to selectively provide respective air streams conditioned for particular modes of patient warming.
The poncho-type patient gown is made from an essentially rectangular blank of material, which supports convenient, simple, and inexpensive mass production of the warming device on a web-based manufacturing line.
In some embodiments, a patient warming device in which at least one mode of patient warming is provided by an inflatable convective warming apparatus supported on a poncho-type patient gown is deployed in the same manner as an upper body thermal blanket by rotating the poncho-type patient garment about the patient's neck to position the inflatable convective warming apparatus across the patient's arms when the patient is supine.
In the patient warming device illustrated, described, and claimed below a “patient gown” is a garment made of a lightweight, soft, flexible material that is used to clothe a patient in a clinic, hospital, or other medical or dental facility when undergoing examination or treatment by medical or dental personnel. This definition excludes clothes and other garments intended for daily wear and which a patient is typically directed to remove before putting on a patient gown. Such clothes and other garments including, without limitation, shirts, coats, overcoats, bibs, vests, sweaters, trousers, dresses, and any and all equivalent garments.
In the patient warming device illustrated, described, and claimed below, a convective warming apparatus is “inflatable”. That is, its structure, flaccid when not in use, tautens, distends, swells, and/or dilates in response to receipt of a stream of pressurized air. However, it should be noted that the term “inflatable” when used in this description and the claims below signifies a potential, but not necessarily an actual state of inflation.
In the patient warming device illustrated, described, and claimed below, the term “convective” denotes a mechanism for transferring heat from an inflatable warming apparatus to a body by air emitted from the apparatus. In this regard, the term refers to the principal heat transfer mechanism, it being understood that heat can also be transferred from the apparatus to the body by conduction and/or radiation, although not to the degree of convection.
A patient warming device is constructed to provide comfort warming and/or therapeutic warming to a patient. In this regard, a patient warming device including a patient gown having the construction of a poncho, with at least one convective warming apparatus supported on a gown surface, is releasably closed on both sides and worn with an open bottom by an ambulatory patient for comfort warming. For therapeutic warming, the poncho-type patient gown is opened and rotated to be deployed on a prone or supine patient in the manner of an upper, lower, or full body inflatable thermal blanket.
In
The patient gown 22 of
With reference to
The patient gown 100 is releasably closed along its sides by bringing the inside surface 106 along the opposing side edges 126 in the back panel 110 over the outside surface along the opposing side edges 122 of the front panel 108. Means 135 seen in
Preferably, the patient gown 100 is constructed from lightweight, soft, flexible nonwoven or woven materials. For example, we have made a patient gown with a poncho-type construction from a non-woven blend of spunlace polyester and wood pulp. Another material from which patient gowns can be made is a non-woven blend of spunlace polypropylene and wood pulp.
In
With further reference to
As illustrated in
An optional construction of the convective apparatus 150 includes one or more continuous seals that define features of the apparatus. In this regard, as per
As per
As can be seen in
In the optional construction of the inflatable convective warming apparatus shown in
The inflatable convective apparatus embodiment shown in
Thus, as per
As per
As per
In all of these cases, the convective warming apparatus is supported on the patient gown in such a manner that the gas-permeable sheet emits warmed air inwardly of the patient gown 100, when the gown is worn or deployed with the inside surface 106 facing, if not surrounding, the patient.
In some cases, as seen in
According to the present best mode of construction of the convective warming device, a single inflatable convective warming apparatus with separately inflatable sections is fabricated or assembled separately from the patient gown and then attached to its inside surface by sewing, gluing, heat sealing, or welding, or any combination of these. The convective warming apparatus is formed by heat sealing two sheets of material together. The relatively gas-permeable sheet is a laminate sheet comprising a layer of nonwoven material on which a layer of polypropylene is extruded, and the gas-impermeable sheet is a polypropylene film. Apertures are formed through the laminate sheet to make it permeable; and permeability is established by the size and density of the apertures. The polypropylene film and the polypropylene layer are sealed together along their peripheries to form inflatable space and within their peripheries at discontinuous seals or stake points. Other seals are made between the polypropylene film and the polypropylene layer to form separate sections and other features, as required. The polypropylene film (of which the gas-impermeable sheet is constituted) is attached by gluing, sewing, or heat sealing to the inside surface of the patient gown and the nonwoven material layer of the gas-permeable sheet faces the patient. The reason for locating the polypropylene film on the inside surface of the patient gown is to reduce the bulk and stiffness of the inflatable convective warming apparatus, thus making the warming device more comfortable to the patient.
Alternatively, each of the permeable and impermeable sheets comprises a layer of spunbond nonwoven material with a polypropylene extrusion coating on one side. Apertures are formed in one of the sheets, as required for permeability. The extrusion coated sides of the sheets are positioned to face each other, and are sealed, by heat, for example, as required for the construction of the convective warming apparatus. With this construction, the exterior surfaces of the convective warming apparatus are constituted of nonwoven material. The surface of the convective warming apparatus that faces the inside surface of the patient gown is nonwoven, and when the patient slides her or his hands into the hand slits 140, they are in comfortable contact with a soft material.
As suggested in
For example, patient gowns having the poncho-type configuration of
Preferred PATIENT WARMING DEVICE CONSTRUCTIONS WITH A PONCHO-TYPE PATIENT GOWN which have been shown and described in detail fully achieve the objects of the invention. Nevertheless, the described embodiments are merely examples representative of the subject matter which is broadly comprehended by the invention. And so the scope of the invention fully encompasses other embodiments which may become obvious to those skilled in the art. Therefore, the scope of the invention is to be limited by no more than the following claims, in which reference to an element in the singular is not intended to mean “one and only one”, but rather is intended to mean “at least one”. It is not necessary for a patient warming device or method to address each and every problem sought to be solved by the present invention, for it to be encompassed by the claims. Furthermore, no element, component, or method step in the disclosure is intended to be dedicated to the public regardless of whether the element, component, or method step is explicitly recited in the claims. Absent express definitions set forth in the detailed description, claim terms are to be given ordinary and accustomed meanings that are not irreconcilable with the specification and file history.
Claims
1. A patient gown in a patient warming device in which at least one mode of patient warming is provided by an inflatable convective warming apparatus supported on the inside surface of a poncho-type patient gown including a major body portion with inside and outside surfaces, front and back panels, a central panel joining the front and back panels, sleeve portions on opposing sides of the central panel, and a head opening in the central panel, between the sleeve portions, the inflatable convective warming apparatus extending along the front and central panels at least to the head opening, and at least one inlet port opening through an impermeable portion of the inflatable convective warming apparatus.
2. The patient gown in a patient warming device according to claim 1, in which the inflatable convective warming apparatus includes an impermeable sheet of material and a permeable sheet of material sealed together by at least a peripheral seal, the impermeable sheet of material is attached to the inside surface of the patient gown, and the at least one inlet port is in the impermeable sheet of material.
3. The patient gown in a patient warming device according to claim 2, in which the inflatable convective warming apparatus includes separately inflatable sections, and the at least one inlet port includes at least one inlet port into a first section and at least one inlet port into a second section.
4. The patient gown in a patient warming device according to claim 3, in which the first section includes a first volume and the second section includes a second volume greater than the first volume.
5. The patient gown in a patient warming device according to claim 3, in which the first section includes a first portion of the permeable sheet of material having a first permeability and the second section includes a second portion of the permeable sheet of material having a second permeability greater than the first permeability.
6. The patient gown in a patient warming device according to claim 1, in which the inflatable convective warming apparatus includes an impermeable sheet of material and a permeable sheet of material sealed to the sheet of impermeable material along a common periphery, the sheet of impermeable material is attached to the inside surface, and the at least one inlet port includes a collar of stiff material attached to the sheet of impermeable material, around an opening in the sheet of impermeable material.
7. The patient gown in a patient warming device according to claim 6, in which the inflatable convective warming apparatus includes first and second separately inflatable sections, the first section has a first permeability and the second section has a second permeability, greater than the first permeability, the first section includes at least one inlet port, and the second section includes at least one inlet port, and further includes a first opening through the front panel in alignment with a portion of the inflatable convective warming apparatus where the at least one inlet port of the first section is positioned, and a second opening through the back panel in alignment with a portion of the inflatable convective warming apparatus where the at least one inlet port of the second section is positioned.
8. The patient gown in a patient warming device according to claim 6, further including hand slits in the front panel.
9. The patient gown in a patient warming device according to claim 6, further including tie straps on side edges the front and back panels.
10. The patient gown in a patient warming device according to claim 6, further including at least one of elongate longitudinal slits and transverse perforation lines in the central panel, between opposing edges of each sleeve portion.
11. The patient gown in a patient warming device according to claim 6, further including at least one opening through the front panel in alignment with a portion of the inflatable convective warming apparatus where the at least one inlet port is positioned.
12. The patient gown in a patient warming device according to claim 1, in which the inflatable convective warming apparatus includes a permeable sheet of material attached at least along its periphery to the inside surface of the patient gown, and the at least one inlet port is attached to the outside surface of the patient gown in communication with an opening in the front panel.
13. The patient gown in a patient warming device according to claim 12, in which the inflatable convective warming apparatus includes separately inflatable sections, and the at least one inlet port includes at least one inlet port into a first section and at least one inlet port into a second section.
14. The patient gown in a patient warming device according to claim 13, in which the first section includes a first volume and the second section includes a second volume greater than the first volume.
15. The patient gown in a patient warming device according to claim 13, in which the first section includes a first portion of the permeable sheet of material having a first permeability and the second section includes a second portion of the permeable sheet of material having a second permeability greater than the first permeability.
16. A patient gown in a patient warming device in which two modes of patient warming are provided by an inflatable convective warming apparatus supported on the inside surface of a poncho-type patient gown including a major body portion with inside and outside surfaces, front and back panels, a central panel joining the front and back panels, sleeve portions on opposing sides of the central panel, and a head opening in the central panel, between the sleeve portions, the inflatable convective warming apparatus extending along the front, central, and back panels and including a head opening in alignment with the head opening in the patient gown, and at least one inlet port opening through an impermeable portion of the inflatable convective warming apparatus.
17. The patient gown in a patient warming device according to claim 16, in which the inflatable convective warming apparatus includes an impermeable sheet of material and a permeable sheet of material sealed together by at least a peripheral seal, in which the impermeable sheet of material is attached to the inside surface of the patient gown and the at least one inlet port opens through the impermeable sheet of material.
18. The patient gown in a patient warming device according to claim 17, in which the inflatable convective warming, apparatus includes separately inflatable comfort and therapeutic warming sections, the comfort warming section is positioned along a portion of the front panel and the therapeutic warming section extends along the front, central, and back panels and includes a head opening aligned with the central panel head opening, and the at least one inlet port includes at least one inlet port into the comfort warming section and at least one inlet port into the therapeutic warming section.
19. The patient gown in a patient warming device according to claim 18, in which the comfort warming section includes a first volume of inflatable space and the therapeutic warming section includes a second volume of inflatable space greater than the first volume.
20. The patient gown in a patient warming device according to claim 18, in which the comfort warming section includes a first portion of the permeable sheet of material having a first permeability and the therapeutic warming section includes a second portion of the permeable sheet of material having a second permeability greater than the first permeability.
21. The patient gown in a patient warming device according to claim 16, further including hand slits in the front panel.
22. The patient gown in a patient warming device according to claim 16, further including tie straps on side edges of the front and back panels.
23. The patient gown in a patient warming device according to claim 16, further including at least one of an elongate longitudinal slit and a transverse perforation line in each sleeve portion, between opposing edges of each sleeve portion.
24. The patient gown in a patient warming device according to claim 16, further including at least one opening through the front panel in alignment with a portion of the inflatable convective warming apparatus where the at least one inlet port is positioned.
25. A method of warming a patient with a warming device which includes a poncho-type patient gown with a central panel, a head opening in the central panel, and an inflatable convective warming apparatus supported on an inside surface of the patient gown and extending along the front panel at least to the head opening, the method comprising:
- clothing a patient in the poncho-type patient gown such that the patient's head is received in the head opening;
- releasably attaching opposing sides of the patient gown;
- inflating the convective warming apparatus with a stream of warmed air;
- wherein warmed air is expelled from the convective warming apparatus onto the patient;
- separating the opposing sides;
- rotating the poncho-type patient gown about the patient's head to position the patient gown across the patient's arms when the patient is supine; and,
- while the patient is supine, inflating the convective warming apparatus with a stream of warmed air;
- wherein warmed air is emitted from the convective warming apparatus onto the patient.
26. A method of manufacturing warming devices in which each warming device includes a patient gown with an inflatable convective warming apparatus supported on a surface of the patient gown, comprising the acts of:
- forming patient gowns with poncho-type configurations in a patient gown web;
- forming inflatable convective warming apparatuses in a convective warming apparatus web;
- joining the convective warming apparatus web to a predetermined surface of the patient gown web to form a composite web.
27. The method of manufacturing according to claim 26, in which:
- forming patient gowns with poncho-type configurations includes forming head openings in the patient gown web; and,
- forming inflatable convective warming apparatuses includes forming head openings in the convective warming apparatus web.
28. The method of manufacturing according to claim 26, further including forming head openings in the composite web.
2512559 | June 1950 | Williams |
2573414 | October 1951 | Dunn |
2826758 | March 1958 | Kahn |
3468299 | September 1969 | D'Amato |
3610323 | October 1971 | Troyer |
3757366 | September 1973 | Sacher |
3855635 | December 1974 | Ramirez |
3911499 | October 1975 | Benevento et al. |
3950789 | April 20, 1976 | Konz et al. |
4055173 | October 25, 1977 | Knab |
4146933 | April 3, 1979 | Jenkins et al. |
4369528 | January 25, 1983 | Vest et al. |
4494248 | January 22, 1985 | Holder |
4524463 | June 25, 1985 | Ogden |
4558468 | December 17, 1985 | Landry et al. |
4578825 | April 1, 1986 | Vote |
4587671 | May 13, 1986 | Rodriguez et al. |
4651727 | March 24, 1987 | Howorth |
4653120 | March 31, 1987 | Leaf |
4696066 | September 29, 1987 | Ball et al. |
4718124 | January 12, 1988 | Sawicki et al. |
4787101 | November 29, 1988 | Feinberg |
4914752 | April 10, 1990 | Hinson et al. |
4964282 | October 23, 1990 | Wagner |
5062424 | November 5, 1991 | Hooker |
5190031 | March 2, 1993 | Guibert et al. |
5255390 | October 26, 1993 | Gross et al. |
5304213 | April 19, 1994 | Berke et al. |
5360439 | November 1, 1994 | Dickerhoff et al. |
5367710 | November 29, 1994 | Karmin |
5411541 | May 2, 1995 | Bell et al. |
5443488 | August 22, 1995 | Namenye et al. |
5572742 | November 12, 1996 | McFadden |
5575006 | November 19, 1996 | Wolfe |
5611087 | March 18, 1997 | Adkins |
5620482 | April 15, 1997 | Augustine et al. |
5697963 | December 16, 1997 | Augustine |
5733318 | March 31, 1998 | Augustine |
5749109 | May 12, 1998 | Kappel |
5768707 | June 23, 1998 | Lederer |
5785716 | July 28, 1998 | Bayron |
5891187 | April 6, 1999 | Winthrop et al. |
5946722 | September 7, 1999 | Trautmann |
5970519 | October 26, 1999 | Weber |
5974605 | November 2, 1999 | Dickerhoff et al. |
6049907 | April 18, 2000 | Palomo |
6154883 | December 5, 2000 | Spann et al. |
6156058 | December 5, 2000 | Kappel et al. |
6203567 | March 20, 2001 | Augustine |
6216270 | April 17, 2001 | Moquin et al. |
6235659 | May 22, 2001 | McAmish et al. |
6378136 | April 30, 2002 | Matsushita |
6484321 | November 26, 2002 | Shamam |
6511501 | January 28, 2003 | Augustine et al. |
6524332 | February 25, 2003 | Augustine et al. |
6551347 | April 22, 2003 | Elkins |
6571574 | June 3, 2003 | Blackstone |
6596019 | July 22, 2003 | Turner et al. |
6647552 | November 18, 2003 | Hogan |
6694522 | February 24, 2004 | Neal |
6792622 | September 21, 2004 | Graves |
6799332 | October 5, 2004 | Hatton |
6820622 | November 23, 2004 | Teves et al. |
6851125 | February 8, 2005 | Fujikawa et al. |
6876884 | April 5, 2005 | Hansen et al. |
7001416 | February 21, 2006 | Augustine et al. |
7226454 | June 5, 2007 | Albrecht et al. |
7276076 | October 2, 2007 | Bieberich |
7364584 | April 29, 2008 | Anderson |
7470280 | December 30, 2008 | Bieberich |
20030126668 | July 10, 2003 | Scroggins |
20050015127 | January 20, 2005 | Bieberich |
20050143796 | June 30, 2005 | Augustine et al. |
20060047332 | March 2, 2006 | Malmberg et al. |
20060122671 | June 8, 2006 | Albrecht et al. |
20060122672 | June 8, 2006 | Anderson |
20060147320 | July 6, 2006 | Hansen et al. |
20060184216 | August 17, 2006 | Van Duren |
20060184217 | August 17, 2006 | Van Duren |
20060184218 | August 17, 2006 | Bieberich |
20060259104 | November 16, 2006 | Panser |
20070093882 | April 26, 2007 | Anderson et al. |
20070093883 | April 26, 2007 | Anderson et al. |
20070093884 | April 26, 2007 | Anderson et al. |
20070093885 | April 26, 2007 | Anderson et al. |
20070239239 | October 11, 2007 | Albrecht et al. |
20080027521 | January 31, 2008 | Bieberich |
20080027522 | January 31, 2008 | Bieberich |
20080125840 | May 29, 2008 | Anderson |
20080177361 | July 24, 2008 | Anderson |
20090062891 | March 5, 2009 | Bieberich |
20090149931 | June 11, 2009 | Anderson |
20090228083 | September 10, 2009 | Anderson et al. |
821150 | November 1937 | FR |
475811 | November 1937 | GB |
1 462 033 | January 1997 | GB |
525 415 | February 2005 | SE |
WO 97/14381 | April 1997 | WO |
WO 98/48652 | November 1998 | WO |
WO 00/62726 | October 2000 | WO |
WO 03/086500 | October 2003 | WO |
WO 03/106897 | December 2003 | WO |
WO 2004/004500 | January 2004 | WO |
WO 2006/020170 | February 2006 | WO |
WO 2006/062910 | June 2006 | WO |
WO 2006/063027 | June 2006 | WO |
WO 2006/086587 | August 2006 | WO |
WO 2007/047917 | April 2007 | WO |
WO 2008/013603 | January 2008 | WO |
WO 2008/091486 | July 2008 | WO |
- P.O. Fanger, Thermal Comfort: Analysis and Applications in Environmental Engineering, Danish Technical Press, 1970, pp. 5-67.
- C.B. Mahony & J. Odom, Maintaining intraoperative normothermia: A meta-analysis of outcomes with costs. AANA Journal. Apr. 1999. v. 67, No. 2:155-164.
- Porta-Chill—The Portable Air-Chiller—Brochure, http://www.portachil.com/, Dec. 3, 2002.
- EPO Examination Report mailed Oct. 24, 2006, in EPO3719690.4-1526, EP Regional Phase of PCT/US2003/11128 (published as WO/2003/086500).
- EPO Examination Report mailed Dec. 17, 2007, in EPO3719690.4-1526, EP Regional Phase of PCT/US2003/11128 (published as WO/2003/086500).
- EPO Examination Report mailed Sep. 2, 2008, in EP05789978.3, EP Regional Phase of PCT/US2005/025355 (published as WO/2006/020170).
- EPO Examination Report mailed Jan. 23, 2009, in EP05853202, EP Regional Phase of PCT/US2005/044214 (published as WO/2006/063027).
- EPO Examination Report mailed Sep. 29, 2009, in EP06720577.3.
- EPO Examination Report mailed Apr. 24, 2009, in EP06826351.6.
- EPO Examination Report mailed Jun. 22, 2009, in EP05853202.9.
- International Search Report and Written Opinion in PCT/US2005/025355, mailed Dec. 1, 2005.
- International Search Report and Written Opinion in PCT/US2005/043968, mailed Apr. 19, 2006.
- International Search Report and Written Opinion in PCT/US2005/044214, mailed Apr. 19, 2006.
- International Search Report and Written Opinion in PCT/US2006/004644, mailed Dec. 18, 2006.
- International Search Report and Written Opinion in PCT/US2006/041028, mailed Feb. 20, 2007.
- International Search Report and Written Opinion in PCT/US2007/013073, mailed Nov. 9, 2007.
- International Search Report and Written Opinion in PCT/US2008/000141, mailed Nov. 11, 2008.
Type: Grant
Filed: Dec 21, 2009
Date of Patent: Jun 5, 2012
Patent Publication Number: 20100179624
Assignee: Arizant Healthcare Inc. (Eden Prairie, MN)
Inventors: Thomas P. Anderson (Savage, MN), Jared J. Balthazor (St. Francis, MN), Paul T. Kennedy (Burnsville, MN), Andrew J. McGregor (Minneapolis, MN), Christopher A. Miller (Apple Valley, MN), Mark A. Poppen (Eden Prairie, MN)
Primary Examiner: Roy Gibson
Attorney: INCAPLAW
Application Number: 12/653,825
International Classification: A61F 7/00 (20060101);